Carbon-concentrating mechanisms in pods are key elements for terminal drought resistance in Phaseolus vulgaris

24 de enero de 2023

 

Les invitamos a leer el artículo "Carbon-concentrating mechanisms in pods are key elements for terminal drought resistance in Phaseolus vulgaris" en el que colaboró el Dr. Alfredo H. Herrera Estrella, Profesor Investigador Emérito de Cinvestav UGA-Langebio.

Autores:  Ingrid González-Lemes, Alexis Acosta-Maspons, José E Cetz-Chel, José A Polania, Jorge A Acosta-Gallegos, Alfredo Herrera-Estrella, Alejandra A Covarrubias.

Felicitamos al estudiantado y profesorado que contribuyeron en esta investigación por su arduo trabajo.

Abstract: Common bean (Phaseolus vulgaris L.) is one of the most consumed legumes in the human diet and a substantial source of dietary protein. A major problem for this rainfed crop is the decrease in grain yield caused by prolonged drought periods during the reproductive stage of plant development (terminal drought). Terminal drought remains a prevailing threat to the farming of this staple, with losses reaching >80%. Based on the high correlation between the resistance of common bean to terminal drought and efficient photoassimilate mobilization and biomass accumulation in seeds, we aimed to identify mechanisms implicated in its resistance to this stress. We used two representative Durango race common bean cultivars with contrasting yields under terminal drought, grown under well-watered or terminal drought conditions. Using comparative transcriptomic analysis focused on source leaves, pods, and seeds from both cultivars, we provide evidence indicating that under terminal drought the resistant cultivar promotes the build-up of transcripts involved in recycling carbon through photosynthesis, photorespiration, and CO2-concentrating mechanisms in pod walls, while in seeds, the induced transcripts participate in sink strength and respiration. Physiological data support this conclusion, implicating their relevance as key processes in the plant response to terminal drought.

Keywords: Biomass partitioning, carbon metabolism, drought resistance, Phaseolus vulgaris, photosynthesis, pod walls, RNA sequencing, seeds, source leaves, terminal drought.

Print

More links

CONTÁCTENOS

Logo Cinvestav

Av. Instituto Politécnico Nacional 2508,
Col. San Pedro Zacatenco,
Alcaldía Gustavo A. Madero,
Ciudad de México, Código Postal 07360

Tel. +52 55 5747 3800

Cinvestav © 2024
11/11/2024 01:41:23 p. m.